EP1067148A1 - Thermoplastische perhalogenierte Chlorotrifluoroethylen-(Co)polymere - Google Patents

Thermoplastische perhalogenierte Chlorotrifluoroethylen-(Co)polymere Download PDF

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Publication number
EP1067148A1
EP1067148A1 EP00113224A EP00113224A EP1067148A1 EP 1067148 A1 EP1067148 A1 EP 1067148A1 EP 00113224 A EP00113224 A EP 00113224A EP 00113224 A EP00113224 A EP 00113224A EP 1067148 A1 EP1067148 A1 EP 1067148A1
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Prior art keywords
polymers
component
ctfe
mfi
polymer
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EP00113224A
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English (en)
French (fr)
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EP1067148B1 (de
Inventor
Julio A. Abusleme
Claudia Manzoni
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Solvay Specialty Polymers Italy SpA
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Ausimont SpA
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    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08FMACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
    • C08F259/00Macromolecular compounds obtained by polymerising monomers on to polymers of halogen containing monomers as defined in group C08F14/00
    • C08F259/08Macromolecular compounds obtained by polymerising monomers on to polymers of halogen containing monomers as defined in group C08F14/00 on to polymers containing fluorine
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08FMACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
    • C08F214/00Copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and at least one being terminated by a halogen
    • C08F214/18Monomers containing fluorine
    • C08F214/24Trifluorochloroethene
    • C08F214/242Trifluorochloroethene with fluorinated vinyl ethers
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08FMACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
    • C08F259/00Macromolecular compounds obtained by polymerising monomers on to polymers of halogen containing monomers as defined in group C08F14/00
    • C08F259/02Macromolecular compounds obtained by polymerising monomers on to polymers of halogen containing monomers as defined in group C08F14/00 on to polymers containing chlorine
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08LCOMPOSITIONS OF MACROMOLECULAR COMPOUNDS
    • C08L51/00Compositions of graft polymers in which the grafted component is obtained by reactions only involving carbon-to-carbon unsaturated bonds; Compositions of derivatives of such polymers
    • C08L51/04Compositions of graft polymers in which the grafted component is obtained by reactions only involving carbon-to-carbon unsaturated bonds; Compositions of derivatives of such polymers grafted on to rubbers
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08LCOMPOSITIONS OF MACROMOLECULAR COMPOUNDS
    • C08L51/00Compositions of graft polymers in which the grafted component is obtained by reactions only involving carbon-to-carbon unsaturated bonds; Compositions of derivatives of such polymers
    • C08L51/06Compositions of graft polymers in which the grafted component is obtained by reactions only involving carbon-to-carbon unsaturated bonds; Compositions of derivatives of such polymers grafted on to homopolymers or copolymers of aliphatic hydrocarbons containing only one carbon-to-carbon double bond

Definitions

  • the present invention relates to thermoplastic perhalogenated polymers having a combination of improved mechanical properties.
  • CTFE chlorotrifluoroethylene
  • PCTFE CTFE
  • the polymers of the invention are to be used for obtaining manufactured articles such as pipes, sheets, films having the above mentioned characteristics.
  • PCTFE is a fluorinated resin having excellent chemical resistance with good impermeability properties to gases and vapours, more specifically to oxygen, nitrogen and water vapour, but mechanical properties typical of a brittle material, i.e. high values of elastic modulus and yield stress combined with low values of stress and strain at break.
  • PCTFE polymers having a high viscosity, i.e., low Melt Flow Index (MFI) and high molecular weight show better mechanical properties than those having a low viscosity, i.e., high Melt Flow Index and low molecular weight.
  • MFI Melt Flow Index
  • PCTFE having a very high viscosity is extremely difficult or unfeasible in the fluorinated thermoplastic processing for obtaining manufactured articles, such as pipes, sheets and films.
  • the PCTFE for its characteristics is widely used in multilayer systems in food and pharmaceutical packaging products.
  • USP 5,145,925 describes a CTFE copolymer with a perfluoroalkylvinylether in an amount between 0.01 and 1% by moles; the preferred comonomer is perfluoropropylvinylether (FPVE).
  • FPVE perfluoropropylvinylether
  • the described copolymers containing less than 1% by moles of FPVE show elongations at break lower than 100%. The said elongation improves with the FPVE increase and the yield stress diminishes. Therefore a global improvement of the mechanical properties of the exemplified polymer in comparison with the CTFE homopolymer is not described.
  • thermoplastic perhalogenated PCTFE having besides the intrinsic homopolymer characteristics (chemical resistance and impermeability) a combination of mechanical properties of improved stresses and elongations at break and without substantially decreasing the yield stress in comparison with those of the homopolymer.
  • CTFE chlorotrifluoroethylene
  • R MFI Melt Flow Index ratio
  • the polymers of the invention having a R MFI lower than 0.3, preferably lower than 0.2, more preferably lower than 0.05 characterized in that the polymer component (II) contains more than 1% by moles of the perfluoroalkylvinylether of comonomer (a), are more preferred.
  • perfluoroalkylvinylethers of formula (a) the perfluoroethylvinylether and the perfluoropropylvinylether (PPVE) are preferred.
  • the polymers object of the invention are CTFE thermoplastic polymers having a MFI higher than 0.1 g/10', preferably higher than 0.5 g/10', more preferably higher than 2 g/10'.
  • the polymer component (I) of the polymer of the invention preferably ranges from 30 to 70%, more preferably from 40 to 60% by weight.
  • the polymers of the invention can be obtained by blending powder or latex of components (I) and (II).
  • the polymers (components I and II) can be prepared by (co)polymerization of the corresponding monomers, in suspension in organic medium or in water or in aqueous emulsion in the presence of a radical initiator, at a temperature generally in the range -20°C-150°C, preferably 0°C-100°C, more preferably 10°C-70°C.
  • the reaction pressure is generally in the range 1.5-80 bar, preferably 3-37 bar, still more preferably 4-26 bar.
  • any compound able to generate active radicals at the selected (co)polymerization temperature can be used.
  • the various radical initiators can be selected from:
  • the reaction medium is formed of an organic phase, to which water is sometimes added in order to favour the heat dispersion which develops during the reaction.
  • the organic phase can be formed of the monomers themselves, without addition of solvents, or of the monomers dissolved in a suitable organic solvent.
  • organic solvents chlorofluorocarbons, such as CCl 2 F 2 (CFC-12), CCl 3 F (CFC-11), CCl 2 FCClF 2 (CFC-113), CClF 2 CClF 2 (CFC-114), etc. are conventionally used.
  • fluoropolyethers with at least one hydrogenated end group, preferably two, of the -CF 2 H, -CF 2 CF 2 H, -CF(CF 3 )H type, can be used.
  • the usable amount of the radical initiator is the standard one for the (co)polymerization of fluorinated olefinic monomers, and is generally in the range 0.003%-10% by weight with respect to the total amount of (co)polymerized monomers.
  • a suitable surfactant see for example those described in USP 4,360,652 and USP 4,025,709, so as to give to a stable emulsion.
  • a suitable surfactant see for example those described in USP 4,360,652 and USP 4,025,709, so as to give to a stable emulsion.
  • a suitable surfactant see for example those described in USP 4,360,652 and USP 4,025,709, so as to give to a stable emulsion.
  • a suitable surfactant see for example those described in USP 4,360,652 and USP 4,025,709, so as to give to a stable emulsion.
  • a suitable surfactant see for example those described in USP 4,360,652 and USP 4,025,709, so as to give to a stable emulsion.
  • a suitable surfactant see for example those described in USP 4,360,652 and USP 4,025,709, so as to give to a stable emul
  • Preferred surfactants are those, wherein M + is selected between Na + and K + , preferably K + , which, when combined with inorganic initiators of Na + and K + , preferably K + , give non-discolored polymers.
  • chain transfer agents for obtaining low molecular weights
  • these can preferably be halogenated hydrocarbons, for example chloroform or HCFC 123 and ethane or methane.
  • the transfer agent amount can range within rather wide limits, depending on the reaction temperature and the molecular weight target. Generally, such amount ranges from 0.001 to 5% by weight, preferably from 0.05 to 1% by weight, with respect to the total amount of monomers introduced to the reactor.
  • the process object of the present invention can be advantageously carried out in the presence of perfluoropolyoxyalkylene dispersions, emulsions or microemulsions, according to USP 4,789,717 and USP 4,864,006, or also of fluoropolyoxyalkylene microemulsions having hydrogenated end groups and/or hydrogenated repeating units, according to USP 5,498,680.
  • the polymerization can also be carried out by using a radical photoinitiator in the presence of visible ultraviolet radiation, either in suspension in organic medium or in water or in emulsion/microemulsion, according to what described in European patents EP 650,982 and EP 697,766 in the name of the Applicant, herein incorporated by reference.
  • thermally stable photoinitiators at the polymerization temperature and also at room temperature are preferred, and among them, perhalogenated organic peroxides or inorganic such as potassium persulphate or sodium persulphate are particularly preferred.
  • the preferred process according to the present invention is carried out in (per)fluoropolyoxyalkylene micromeulsion, wherein the surfactant is a Na + or K + salt, preferably K + , and in the presence of an inorganic Na + or K + initiator, preferably potassium persulphate.
  • the surfactant is a Na + or K + salt, preferably K +
  • an inorganic Na + or K + initiator preferably potassium persulphate.
  • the preferred preparation process of the polymers of the invention is the polymerization of component (I) or component (II) in presence of component (II) or component (I) respectively, as above defined both components (I) and (II).
  • the most preferred preparation process of the polymers of the invention is the synthesis of component (II) in presence of component (I), as above defined.
  • the polymers of the present invention are used for preparing manufactured articles, specifically pipes, sheets and films.
  • the second melting temperature (T 2f ) and the crystallization temperature (T xx ) are determined by differential scanning calorimetry (DSC).
  • the monomer composition has been determined by 19 -F-NMR.
  • the discoloration is determined through the observation of the strands obtained after 20, 40 and 60 minutes of residence time of the polymer in the MFI machine at 265°C.
  • Discoloration means the coloration of the extruded polymer.
  • the product not showing discoloration is colourless or white.
  • Polymers showing discoloration are generally yellowish or brown. The skilled in the art is able to determine if the polymer shows or not discoloration, also using methods measuring the colour index such as for example the white or yellow index.
  • a quartz window has been inserted, in correspondence of which a Hanau® TQ-150 type UV lamp has been placed. It is a high pressure mercury lamp which emits radiation in the range 240-600 nm, with a 13.2 W power for the radiation in the 240-330 nm range.
  • the autoclave has been evacuated and therein were introduced in sequence:
  • the synthesis of the homopolymer component (I) was repeated. After 300 minutes a pressure of 4 absolute bar was reached and the lamp was switched off. The unreacted monomers were removed and the latex discharged from the autoclave at room temperature, having a concentration of 126 g/l of water, was cryogenically coagulated, then the polymer was separated, and dried at 150°C for about 16 hours. The obtained MFI is 0.0 g/10'. No discoloration of the obtained strands after 60 minutes of residence time in the MFI machine at 265°C, was observed.
  • a quartz window has been inserted, in correspondence of which a Hanau® TQ-150 type UV lamp has been placed. It is a high pressure mercury lamp which emits radiation in the range 240-600 nm, with a 13.2 W power for the radiation in the 240-330 nm range.
  • the autoclave has been evacuated and therein were introduced in sequence:
  • the synthesis of the homopolymer component (I) was repeated. After 250 minutes a pressure of 7 absolute bar was reached and the lamp was switched off. The unreacted monomers were removed and the latex discharged from the autoclave at room temperature, having a concentration of 120 g/l of water, was cryogenically coagulated, then the polymer was separated, and dried at 150°C for about 16 hours. The obtained MFI is 5.2 g/10'.
  • the synthesis of the homopolymer component (I) was repeated. At the end of the reaction the unreacted monomers were removed and the product discharged from the autoclave was dried at 120°C for about 16 hours.
  • the amount of the obtained dry product was 120 g.
  • the obtained MFI is 2.1 g/10'.
  • the unreacted monomers were removed and the latex discharged from the autoclave at room temperature, having a concentration of 268 g/l of water, was cryogenically coagulated, then the polymer was separated and dried at 150°C for about 16 hours.
  • Example 4 was repeated except that 300 g of CTFE, 6.5 g of perfluoropropylvinylether were introduced, the reaction temperature was brought to 20°C and the UV lamp of the Hanau® TQ-150 type placed in correspondence of the quartz window was switched on. It is a high pressure mercury lamp which emits radiation in the range 240-600 nm, with a 13.2 W power for the radiation in the 240-330 nm range. After 515 minutes the pressure of 4 absolute bar was reached and the lamp was switched off.
  • the unreacted monomers were removed and the latex discharged from the autoclave at room temperature, having a concentration of 198 g/l of water, was cryogenically coagulated, then the polymer was separated, and dried at 150°C for about 16 hours.
  • CTFE chlorotrifluoroethylene
  • the radical initiator under the form of a trichloroacetylperoxide (TCAP) solution in CFC-113, maintained at -17°C, having a titre equal to 0.11 g TCAP/ml, was then fed in a continuous way with a flow-rate of 6 ml/h during the whole duration of the polymerization (9 hours).
  • TCAP trichloroacetylperoxide
  • the product discharged from the autoclave was dried at 120°C for about 16 hours.
  • the amount of the obtained dry product was 550 g.
  • Example 7 was repeated except that in the autoclave the radical initiator under the form of a trichloroacetylperoxide (TCAP) solution in CFC-113, maintained at -17°C, having a titre equal to 0.09 g TCAP/ml, was fed in a continuous way with a flow-rate of 22 ml/h during the whole duration of the polymerization (9 hours).
  • TCAP trichloroacetylperoxide
  • the product discharged from the autoclave was dried at 120°C for about 16 hours.
  • the amount of the obtained dry product was 940 g.
  • Example 7 was repeated except that in the autoclave the radical initiator under the form of a trichloroacetylperoxide (TCAP) solution in CFC-113, maintained at -17°C, having a titre equal to 0.11 g TCAP/ml, was fed in a continuous way with a flow-rate of 32 ml/h during the whole duration of the polymerization (9 hours).
  • TCAP trichloroacetylperoxide
  • the product discharged from the autoclave was dried at 120°C for about 16 hours.
  • the amount of the obtained dry product was 1,301 g.
  • CTFE homopolymers As known, it can be noticed also from Table 1 that the CTFE homopolymers (comparative Examples 7-9), have mechanical properties which remarkably worsen as MFI increases.
  • the polymers of the present invention all have stresses and elongations at break clearly better than the CTFE homopolymers and the CTFE/FPVE copolymers described in Examples 4-6, even maintaining an optimal global set of the other mechanical properties, in particular maintaining good yield stress values.

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  • Chemical & Material Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Medicinal Chemistry (AREA)
  • Polymers & Plastics (AREA)
  • Organic Chemistry (AREA)
  • Addition Polymer Or Copolymer, Post-Treatments, Or Chemical Modifications (AREA)
  • Polymerisation Methods In General (AREA)
  • Manufacture Of Macromolecular Shaped Articles (AREA)
  • Compositions Of Macromolecular Compounds (AREA)
  • Polymerization Catalysts (AREA)
  • Graft Or Block Polymers (AREA)
  • Artificial Filaments (AREA)
  • Polyethers (AREA)
  • Other Resins Obtained By Reactions Not Involving Carbon-To-Carbon Unsaturated Bonds (AREA)
EP00113224A 1999-07-09 2000-06-21 Thermoplastische perhalogenierte Chlorotrifluoroethylen-(Co)polymere Expired - Lifetime EP1067148B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
IT1999MI001515A ITMI991515A1 (it) 1999-07-09 1999-07-09 Co polimeri peralogenati termoprocessabili del clorotrifluoroetilene
ITMI991515 1999-07-09

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EP1067148A1 true EP1067148A1 (de) 2001-01-10
EP1067148B1 EP1067148B1 (de) 2004-10-06

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US (1) US6391975B1 (de)
EP (1) EP1067148B1 (de)
JP (1) JP4576029B2 (de)
DE (1) DE60014513T2 (de)
IT (1) ITMI991515A1 (de)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2002059190A2 (fr) * 2001-01-26 2002-08-01 Solvay (Société Anonyme) Compositions de polymeres halogenes thermoplastiques, procede pour leur preparation et utilisation de celles-ci
US6569946B2 (en) 2000-02-15 2003-05-27 Ausimont Spa Thermoplastic fluoropolymers
CN104892811A (zh) * 2014-03-07 2015-09-09 浙江省化工研究院有限公司 一种新型结构的乙烯-三氟氯乙烯共聚物、其制备方法及应用

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ITMI20030641A1 (it) * 2003-04-01 2004-10-02 Solvay Solexis Spa Composizioni espandibili di fluoropolimeri
JP2007502726A (ja) * 2003-08-19 2007-02-15 ソルヴェイ アドバンスド ポリマーズ リミテッド ライアビリティ カンパニー 耐衝撃性の改善された、ポリアミド中空体

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US4155953A (en) * 1975-10-30 1979-05-22 Daikin Kogyo Co., Ltd. Process for production of modified polychlorotrifluoroethylene
EP0450613A1 (de) * 1990-04-04 1991-10-09 Daikin Industries, Limited Chlortrifluorethylen/Perfluor(alkylvinylether)-Copolymer
EP0816401A1 (de) * 1996-07-01 1998-01-07 Ausimont S.p.A. Thermoplastische Copolymere aus VDF

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FR2286153A1 (fr) 1974-09-24 1976-04-23 Ugine Kuhlmann Procede de polymerisation ou de copolymerisation en emulsion du fluorure de vinylidene
US4360652A (en) 1981-08-31 1982-11-23 Pennwalt Corporation Method of preparing high quality vinylidene fluoride polymer in aqueous emulsion
JPS59197411A (ja) 1983-04-25 1984-11-09 Daikin Ind Ltd エチレン−テトラフルオロエチレンまたはクロロトリフルオロエチレン系共重合体
EP0185242A3 (de) 1984-12-20 1986-11-05 Ausimont, U.S.A. Copolymere aus Chlortrifluorethylen, Ethylen und Perfluoralkylethylenen
JPS61149085A (ja) 1984-12-24 1986-07-07 Chiyoda Chem Eng & Constr Co Ltd 微生物担持体
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IT1189092B (it) 1986-04-29 1988-01-28 Ausimont Spa Processo di polimerizzazione in dispersione acquosa di monomeri fluorurati
IT1204903B (it) 1986-06-26 1989-03-10 Ausimont Spa Processo di polimerizzazione in dispersione acquosa di monomeri florati
US5021516A (en) 1989-06-26 1991-06-04 E. I. Du Pont De Nemours And Company Poly(perfluoroether)acyl peroxides
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US5453477A (en) 1992-05-01 1995-09-26 Alliedsignal Inc. Process of polymerizing chloroetrifluoroethylene with alkyl hydroperoxide and metal metabisulfite
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IT1266647B1 (it) * 1993-10-29 1997-01-09 Ausimont Spa Processo di (co)polimerizzazione di monomeri olefinici fluorurati in emulsione acquosa
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4155953A (en) * 1975-10-30 1979-05-22 Daikin Kogyo Co., Ltd. Process for production of modified polychlorotrifluoroethylene
EP0450613A1 (de) * 1990-04-04 1991-10-09 Daikin Industries, Limited Chlortrifluorethylen/Perfluor(alkylvinylether)-Copolymer
EP0816401A1 (de) * 1996-07-01 1998-01-07 Ausimont S.p.A. Thermoplastische Copolymere aus VDF

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6569946B2 (en) 2000-02-15 2003-05-27 Ausimont Spa Thermoplastic fluoropolymers
WO2002059190A2 (fr) * 2001-01-26 2002-08-01 Solvay (Société Anonyme) Compositions de polymeres halogenes thermoplastiques, procede pour leur preparation et utilisation de celles-ci
FR2820140A1 (fr) * 2001-01-26 2002-08-02 Solvay Compositions de polymeres halogenes thermoplastiques, procede pour leur preparation et utilisation de celles-ci
WO2002059190A3 (fr) * 2001-01-26 2004-01-29 Solvay Compositions de polymeres halogenes thermoplastiques, procede pour leur preparation et utilisation de celles-ci
US6979715B2 (en) 2001-01-26 2005-12-27 Solvay (Societe Anonyme) Thermoplastic halogenated polymer compositions, method for preparing same and use thereof
EP1409583B1 (de) * 2001-01-26 2015-03-18 Solvay Sa Zusammensetzungen aus thermoplastischen, halogenierten polymeren, verfahren zu ihrer herstellung und ihrer verwendung
CN104892811A (zh) * 2014-03-07 2015-09-09 浙江省化工研究院有限公司 一种新型结构的乙烯-三氟氯乙烯共聚物、其制备方法及应用
CN104892811B (zh) * 2014-03-07 2017-12-01 浙江省化工研究院有限公司 一种乙烯‑三氟氯乙烯共聚物、其制备方法及应用

Also Published As

Publication number Publication date
ITMI991515A0 (it) 1999-07-09
DE60014513D1 (de) 2004-11-11
US6391975B1 (en) 2002-05-21
DE60014513T2 (de) 2006-02-23
EP1067148B1 (de) 2004-10-06
JP4576029B2 (ja) 2010-11-04
ITMI991515A1 (it) 2001-01-09
JP2001040161A (ja) 2001-02-13

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